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October 20, 2020Physiological Measurement12 citationsOpen Access

Detection of subjects with ischemic heart disease by using machine learning technique based on heart rate total variability parameters

AAAgostino AccardoGSGiulia SilveriMMMarco Merlo

Key Result

Combining heart rate total variability parameters with left ventricular ejection fraction achieved 79.8% accuracy in identifying ischemic heart disease patients.

Structured PICO

Can machine learning algorithms based on heart rate total variability parameters accurately detect ischemic heart disease?

P
Population
496 subjects (245 with ischemic heart disease and 251 normal subjects matched by age and gender)
I
Intervention
Artificial neural network (ANN) machine learning algorithm using heart rate total variability parameters from 24 h RR signal, age, gender, and left ventricular ejection fraction (LVEF)
C
Comparator
Normal subjects (healthy controls)
O
Outcome
Accuracy of identifying ischemic heart disease patients

Machine learning algorithms combining heart rate total variability parameters and LVEF can non-invasively detect ischemic heart disease with nearly 80% accuracy.

Abstract

Abstract Objective : Ischemic heart disease (IHD), in its chronic stable form, is a subtle pathology due to its silent behavior before developing in unstable angina, myocardial infarction or sudden cardiac death. The clinical assessment is based on typical symptoms and finally confirmed, invasively, by coronary angiography. Recently, heart rate variability (HRV) analysis as well as some machine learning algorithms like artificial neural networks (ANNs) were used to identify cardiovascular arrhythmias and, only in few cases, to classify IHD segments in a limited number of subjects. The goal of this study was the identification of the ANN structure and the HRV parameters producing the best performance to identify IHD patients in a non-invasive way, validating the results on a large sample of subjects. Moreover, we examined the influence of a clinical non-invasive parameter, the left ventricular ejection fraction (LVEF), on the classification performance. Approach : To this aim, we extracted several linear and non-linear parameters from 24 h RR signal, considering both normal and ectopic beats (heart rate total variability), of 251 normal and 245 IHD subjects, matched by age and gender. ANNs using several different combinations of these parameters together with age and gender were tested. For each ANN, we varied the number of hidden neurons from 2 to 7 and simulated 100 times, changing randomly the training and test dataset. Main results : The HRTV parameters showed significant greater variability in IHD than in normal subjects. The ANN applied to mean RR, LF, LF/HF, beta exponent, SD2 together with age and gender reached a maximum accuracy of 71.8% and, by adding as input LVEF, an accuracy of 79.8%. Significance : The study provides a deep insight into how a combination of some HRTV parameters and LVEF could be exploited to reliably detect the presence of subjects affected by IHD.

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Cite This Study

Accardo et al. (2020) studied this question. Combining heart rate total variability parameters with left ventricular ejection fraction achieved 79.8% accuracy in identifying ischemic heart disease patients.

synapsesocial.com/papers/698cd1bc244806f74a1072b8https://doi.org/10.1088/1361-6579/abc321
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Time-Domain Heart Rate Variability Features for Automatic Congestive Heart Failure Prediction2023 · 26 citations
  2. 2Prediction of the left ventricular ejection fraction by machine learning algorithms based on heart rate variability parameters in patients with ischemic heart disease2022 · 2 citations
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  4. 4Predicting the Risk of Cardiovascular Diseases in the Elderly Based on Clinical Data and Heart Rate Variability Using Machine Learning2026
  5. 5An Effective Deep Learning Model for Automated Detection of Myocardial Infarction Based on Ultrashort-Term Heart Rate Variability Analysis2021 · 13 citations